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Quantum fluctuations of mesoscopic damped double resonance RLC circuit with mutual capacitance—inductance coupling in thermal excitation state

机译:互电容-电感耦合的介观阻尼双谐振RLC电路的量子涨落

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摘要

Based on the scheme of damped harmonic oscillator quantization and thermo-field dynamics (TFD), the quantization of mesoscopic damped double resonance RLC circuit with mutual capacitance—inductance coupling is proposed. The quantum fluctuations of charge and current of each loop in a squeezed vacuum state are studied in the thermal excitation case. It is shown that the fluctuations not only depend on circuit inherent parameters, but also rely on excitation quantum number and squeezing parameter. Moreover, due to the finite environmental temperature and damped resistance, the fluctuations increase with the temperature rising, and decay with time.
机译:基于阻尼谐波振荡器量化和热场动力学(TFD)方案,提出了具有互电容-电感耦合的介观阻尼双谐振RLC电路的量化。在热激励情况下,研究了在压缩真空状态下每个回路的电荷和电流的量子涨落。结果表明,波动不仅取决于电路固有参数,而且取决于激励量子数和压缩参数。此外,由于有限的环境温度和阻尼电阻,波动随着温度的升高而增加,并随时间而衰减。

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